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既有桥梁墩台自振频率测试的冲击振动试验法 被引量:17
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作者 战家旺 夏禾 姚锦宝 《北京交通大学学报》 EI CAS CSCD 北大核心 2005年第1期14-17,40,共5页
提出了一种测量既有桥墩自振频率的新方法,即冲击振动试验法(IVTM).该方法是用重锤击打桥墩,测量桥墩顶部的响应并对其进行傅立叶解析,通过比较响应的幅值谱和相位谱来确定桥墩的自振频率.试验时可仅在墩顶布置一个传感器,因而试验相对... 提出了一种测量既有桥墩自振频率的新方法,即冲击振动试验法(IVTM).该方法是用重锤击打桥墩,测量桥墩顶部的响应并对其进行傅立叶解析,通过比较响应的幅值谱和相位谱来确定桥墩的自振频率.试验时可仅在墩顶布置一个传感器,因而试验相对较简单,试验费用较低,可以用来方便准确地对大量桥墩进行测试. 展开更多
关键词 桥墩 自振频率 冲击振动试验法
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识别中低高度桥墩自振频率的冲击振动试验法 被引量:7
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作者 战家旺 夏禾 《中国铁道科学》 EI CAS CSCD 北大核心 2008年第1期31-35,共5页
在分析既有频率识别方法的基础上,对利用冲击振动试验识别中低高度桥墩频率的方法进行研究。桥墩在白噪声冲击荷载作用下的速度响应频谱非常复杂,往往出现多个卓越频率,如果仅一个卓越频率对应180°相位角,则可明确判定其为桥墩的... 在分析既有频率识别方法的基础上,对利用冲击振动试验识别中低高度桥墩频率的方法进行研究。桥墩在白噪声冲击荷载作用下的速度响应频谱非常复杂,往往出现多个卓越频率,如果仅一个卓越频率对应180°相位角,则可明确判定其为桥墩的自振频率,其他卓越频率可能为相邻梁或桥墩的自振频率,可通过分析它们自身响应频谱的方法进行频率认定。如果出现桥墩响应频谱中多个卓越频率对应180°相位角的情况,需要结合相位曲线特征进行频率识别:满足相位曲线连续横跨180°线的卓越频率是桥墩的自振频率,相位曲线在其后出现突降的卓越频率仍就是相邻梁或墩的干扰频率。用冲击振动试验法可以对桥墩响应频谱中的干扰频率进行鉴别,准确识别出中低高度桥墩的自振频率。 展开更多
关键词 中低高度桥墩 频率识别 冲击振动试验法 桥梁诊断与评定
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既有铁路桥墩健全度评估和试验方法研究 被引量:1
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作者 战家旺 夏禾 《中国铁道科学》 EI CAS CSCD 北大核心 2007年第6期133-135,共3页
In China,the working state evaluation of piers is mainly based on the Code for Rating Existing Railway Bridges.However,the vibration amplitudes of the bridge piers under train excitations vary with train types,train s... In China,the working state evaluation of piers is mainly based on the Code for Rating Existing Railway Bridges.However,the vibration amplitudes of the bridge piers under train excitations vary with train types,train speeds,axle loads and track irregularities,so the damages of piers are difficult to quantitatively evaluate by the vibration amplitude.In this paper,the impact vibration test method(IVTM) was systemically studied through theoretical analyses,numerical simulation calculation,laboratory tests and field experiments.The soundness evaluation method based on the eigenfrequencies of bridge piers was proposed.The main work done in this dissertation is as follows.(1) The fundamental of IVTM was deduced from theory in detail and the computer software for processing the impact vibration test signal was worked out.(2) The principle of determining the eigenfrequencies of structures was confirmed by laboratory tests and some numerical examples including a cantilever pier,a simply-supported beam,a two-span bridge with a single pier,a multi-span bridge with piers and a spatial truss beam model.The fundamentals of IVTM are explained as: for velocity response signal,the dominant frequency,at which the phase is 180° or 360° and the amplitude spectrum shows a dominant peak,is the natural frequency of a structure.For displacement and acceleration response signal,the dominant frequency,at which the phase is 90° or 270° and the amplitude spectrum shows a dominant peak,is the natural frequency of a structure.On the basis of field test data,the analysis results by IVTM,ambient vibration method and modal test method were compared.The frequency identification results of the three methods agree well,which proves the correctness of the fundamental of IVTM from the aspect of engineering application.(3) When bridge piers are impacted laterally by a weight hammer,their response spectra may emerge dominant frequencies at the frequencies of the adjacent piers or beams.At this time,the frequencies can be identified according to the phase condition: in the velocity response spectrum of the pier,the dominant frequency satisfying the 180° phase is the eigenfrequency of the test pier,while those dissatisfying the 180° phase may be the eigenfrequencies of the adjacent piers or beams.(4) The residual free-vibration responses of piers under train excitations are complex.The frequency identification results by IVTM showed that those frequencies identified by RFVM were not the eigenfrequencies of piers,but those of the adjacent beams.Therefore,RFVM is not suitable for the frequency identification of the bridge pier.(5) Four healthy bridges with spread foundation piers were tested,and the eigenfrequencies of piers were analyzed by IVTM.On the basis of the test data,the standard value formula for spread foundation piers of single-track bridges was established by statistical regression method.(6) According to the Chinese Code for Bridge Foundation Design,the critical value of soundness index was determined as 0.7 on the basis of numerical examples and real engineering cases,based on which the soundness evaluation criteria and the evaluation method for piers were proposed.(7) A field experiment was carried out on a bridge which had been judged by a common dynamic test as damaged.The engenfrequencies of the piers and the beams were measured by IVTM,and a conclusion was drawn that No.5 pier was greatly damaged,while No.6 pier was healthy according to the e soundness evaluation criteria for bridge piers.The subsoil around the foundations of the two piers was excavated,by which the damage of No.5 pier was proved and the influence laws of subsoil excavation on the dynamic properties of piers were studied.The in-situ excavation results are identical with the identified results,which confirm that the proposed IVTM and soundness evaluation method for piers in this paper are precise and effective.(8) Since the first-order eigenferquency and the first-order mode shape of a pier can be easily and precisely obtained by IVTM,the ratio between frequency shifts and other indexes based on the first-order modal parameters such as mode shape ratio,MAC coefficient,COMAC coefficient,eigenparameter and curvature difference mode shape were used to detect the damage of a reinforced concrete cantilever.The sensitivities of these indexes to damages were compared and it was pointed out that the first-order mode shape ratio,the first-order eigenparameter and the first-order curvature difference mode shape were indexes suitable for damage identification of the bridge pier. 展开更多
关键词 桥墩 健全度 冲击振动试验法 评估准则 自振频率 模态参数 损伤识别 铁路桥梁
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朔黄铁路慈河特大桥运营性能评估试验研究 被引量:3
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作者 李峰帜 《城市道桥与防洪》 2014年第7期183-187,16,共5页
该文以朔黄铁路慈河特大桥为研究对象,测试了桥梁在运营列车作用下的振动响应,用冲击振动试验法测试了桥墩的自振频率。通过振幅、自振频率、挠度、应变和冲击系数等指标对桥梁的整体技术状况进行了评价。测试结果表明,慈河特大桥梁体... 该文以朔黄铁路慈河特大桥为研究对象,测试了桥梁在运营列车作用下的振动响应,用冲击振动试验法测试了桥墩的自振频率。通过振幅、自振频率、挠度、应变和冲击系数等指标对桥梁的整体技术状况进行了评价。测试结果表明,慈河特大桥梁体各项振动指标均在《铁路桥梁检定规范》规定的限值范围内;主河道桥墩横向振幅小于规范规定的振幅通常值,表明桥墩的横向刚度能够满足重载运输的要求。评估结论可为慈河特大桥的养护管理提供依据,并为同类桥梁的运营性能评估提供参考。 展开更多
关键词 重载铁路 T梁 桥墩 冲击振动试验法 运营性能
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铁路桥梁基础受冲刷对桥墩自振特性的影响分析 被引量:19
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作者 姚锦宝 夏禾 战家旺 《中国铁道科学》 EI CAS CSCD 北大核心 2010年第1期44-48,共5页
以城鸡线2K+614 m桥5号桥墩为研究对象,通过挖开桥墩基础周围覆盖层土体的不同厚度模拟基础受冲刷程度,运用冲击振动试验法进行桥墩自振特性测试,分析桥梁基础受冲刷对桥墩自振特性的影响。结果表明:桥墩基础周围覆盖土层厚度的减少会... 以城鸡线2K+614 m桥5号桥墩为研究对象,通过挖开桥墩基础周围覆盖层土体的不同厚度模拟基础受冲刷程度,运用冲击振动试验法进行桥墩自振特性测试,分析桥梁基础受冲刷对桥墩自振特性的影响。结果表明:桥墩基础周围覆盖土层厚度的减少会降低桥墩的自振频率,并使桥墩的刚体摆动趋势增强;减少的土体越靠近地面对桥墩自振频率的影响越大。采用弹性系数模拟桥墩基础周围土体对桥墩的约束,建立有限元模型,并通过改变弹性系数值模拟覆盖土层厚度变化对基础的约束影响,分析基础在不同冲刷程度下桥墩自振特性的变化规律。用有限元法、能量法和回归法分析覆盖土层厚度变化对桥墩自振特性影响的结果与实测结果的比较表明:有限元法比能量法和回归法能更好地预测基础受冲刷对桥墩自振特性的影响。 展开更多
关键词 桥墩冲刷 冲击振动试验法 自振频率 振幅 现场试验 有限元分析
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通过探测基础刚度评估重载铁路简支梁桥冲刷的影响 被引量:2
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作者 李保龙 《铁道建筑》 北大核心 2019年第7期12-16,共5页
采用冲击振动试验法对一重载铁路多跨简支梁桥的自振频率进行了实际测量,根据Southwell频率合成法和能量守恒原理推导了桥墩自振频率和基础刚度之间的关系。分析了水流冲刷对桥墩基础约束刚度的影响。现场试验结果表明:大沙河特大桥桩... 采用冲击振动试验法对一重载铁路多跨简支梁桥的自振频率进行了实际测量,根据Southwell频率合成法和能量守恒原理推导了桥墩自振频率和基础刚度之间的关系。分析了水流冲刷对桥墩基础约束刚度的影响。现场试验结果表明:大沙河特大桥桩基础受到水流冲刷作用后,自振频率会出现较为明显的下降,基础刚度下降20%左右,但依然满足设计使用需要;在桥梁实际运营养护中,对位于主河道的桥墩应进行重点关注。 展开更多
关键词 动力测试 重载铁路 简支梁桥 基础刚度 自振频率 试验研究 冲击振动试验法
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朔黄重载铁路子牙新河特大桥技术状态评估 被引量:1
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作者 赵德宽 《城市道桥与防洪》 2015年第1期102-105,118,共5页
为了评估重载铁路桥梁的技术状态,对朔黄铁路子牙新河特大桥进行了动力试验。利用冲击振动试验法识别桥墩横向自振频率以及梁体横向和竖向自振频率。动力试验中,通过测试运营列车作用下梁体控制截面的梁体振幅和加速度的响应,并将突测... 为了评估重载铁路桥梁的技术状态,对朔黄铁路子牙新河特大桥进行了动力试验。利用冲击振动试验法识别桥墩横向自振频率以及梁体横向和竖向自振频率。动力试验中,通过测试运营列车作用下梁体控制截面的梁体振幅和加速度的响应,并将突测结果与《铁路桥梁检定规范》规定的限值比较。结果表明,梁体各项动力参数指标均满足规范要求,这说明梁体结构的运营性能良好。该桥部分桥墩之前进行过加固,为了评估加固前和加固后桥墩结构的动力性能,试验选取典型桥墩进行动力测试分析。比较加固前后桥墩振动参数的变化情况。评估结论可验证桥墩加固效果,为其余桥墩是否需要加固提供数据支持。 展开更多
关键词 重载铁路 动力响应 自振频率 冲击振动试验法 技术状态
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